Whitford Denise S, Whitman Brendan T, Owttrim George W
Department of Biological Sciences, University of Alberta, Edmonton, AB T6G 2E9, Canada.
Microb Genom. 2021 Mar;7(3). doi: 10.1099/mgen.0.000517. Epub 2021 Feb 4.
Although RNA helicases are essentially ubiquitous and perform roles in all stages of RNA metabolism, phylogenetic analysis of the DEAD (Asp-Glu-Ala-Asp)-box RNA helicase family in a single phylum has not been performed. Here, we performed a phylogenetic analysis on DEAD-box helicases from all currently available cyanobacterial genomes, comprising a total of 362 helicase protein sequences from 280 strains. DEAD-box helicases belonging to three distinct clades were observed. Two clades, the CsdA (cold shock DEAD-box A)-like and RhlE (RNA helicase E)-like helicases, cluster with the homologous proteins from . The third clade, the CrhR (cyanobacterial RNA helicase Redox)-like helicases, is unique to cyanobacteria and characterized by a conserved sequence motif in the C-terminal extension. Restricted distribution is observed across cyanobacterial diversity with respect to both helicase type and strain. CrhR-like and CsdA-like helicases essentially never occur together, while RhlE always occurs with either a CrhR-like or CsdA-like helicase. CrhR-like and RhlE-like proteins occurred in filamentous cyanobacteria of the orders , and . Similarly, CsdA- and RhlE-like proteins are restricted to unicellular cyanobacteria of the genera and . In addition, the unexpected occurrence of RhlE in two strains suggests recent acquisition and evolutionary divergence. This study, therefore, raises physiological and evolutionary questions as to why DEAD-box RNA helicases encoded in cyanobacterial lineages display restricted distributions, suggesting niches that require either CrhR or CsdA RNA helicase activity but not both. Extensive conservation of gene synteny surrounding the previously described operon is also observed, indicating a role in the maintenance of photosynthesis. The analysis provides insights into the evolution, origin and dissemination of sequences within a single gene family to yield divergent functional roles.
尽管RNA解旋酶基本上无处不在,并在RNA代谢的各个阶段发挥作用,但尚未对单一门中的DEAD(天冬氨酸-谷氨酸-丙氨酸-天冬氨酸)框RNA解旋酶家族进行系统发育分析。在这里,我们对所有目前可用的蓝藻基因组中的DEAD框解旋酶进行了系统发育分析,这些基因组总共包含来自280个菌株的362个解旋酶蛋白序列。观察到属于三个不同进化枝的DEAD框解旋酶。两个进化枝,即类CsdA(冷休克DEAD框A)和解旋酶和类RhlE(RNA解旋酶E)解旋酶,与来自……的同源蛋白聚集在一起。第三个进化枝,即类CrhR(蓝藻RNA解旋酶氧化还原)解旋酶,是蓝藻特有的,其特征是在C末端延伸中有一个保守的序列基序。在蓝藻多样性中,就解旋酶类型和菌株而言,观察到分布受限。类CrhR和解旋酶基本上从不一起出现,而RhlE总是与类CrhR或类CsdA解旋酶一起出现。类CrhR和类RhlE蛋白出现在……目的丝状蓝藻中。同样,类CsdA和类RhlE蛋白仅限于……属的单细胞蓝藻。此外,RhlE在两个……菌株中的意外出现表明其最近的获得和进化分歧。因此,这项研究提出了生理和进化问题,即为什么蓝藻谱系中编码的DEAD框RNA解旋酶显示出受限的分布,这表明存在需要CrhR或CsdA RNA解旋酶活性但不需要两者的生态位。还观察到围绕先前描述的……操纵子的基因共线性的广泛保守性,表明其在维持光合作用中的作用。该分析为单个基因家族内序列的进化、起源和传播提供了见解,以产生不同的功能作用。